Cargando…

Synthetic torpor triggers a regulated mechanism in the rat brain, favoring the reversibility of Tau protein hyperphosphorylation

Introduction: Hyperphosphorylated Tau protein (PPTau) is the hallmark of tauopathic neurodegeneration. During “synthetic torpor” (ST), a transient hypothermic state which can be induced in rats by the local pharmacological inhibition of the Raphe Pallidus, a reversible brain Tau hyperphosphorylation...

Descripción completa

Detalles Bibliográficos
Autores principales: Squarcio, Fabio, Hitrec, Timna, Piscitiello, Emiliana, Cerri, Matteo, Giovannini, Catia, Martelli, Davide, Occhinegro, Alessandra, Taddei, Ludovico, Tupone, Domenico, Amici, Roberto, Luppi, Marco
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10034179/
https://www.ncbi.nlm.nih.gov/pubmed/36969585
http://dx.doi.org/10.3389/fphys.2023.1129278
_version_ 1784911155546816512
author Squarcio, Fabio
Hitrec, Timna
Piscitiello, Emiliana
Cerri, Matteo
Giovannini, Catia
Martelli, Davide
Occhinegro, Alessandra
Taddei, Ludovico
Tupone, Domenico
Amici, Roberto
Luppi, Marco
author_facet Squarcio, Fabio
Hitrec, Timna
Piscitiello, Emiliana
Cerri, Matteo
Giovannini, Catia
Martelli, Davide
Occhinegro, Alessandra
Taddei, Ludovico
Tupone, Domenico
Amici, Roberto
Luppi, Marco
author_sort Squarcio, Fabio
collection PubMed
description Introduction: Hyperphosphorylated Tau protein (PPTau) is the hallmark of tauopathic neurodegeneration. During “synthetic torpor” (ST), a transient hypothermic state which can be induced in rats by the local pharmacological inhibition of the Raphe Pallidus, a reversible brain Tau hyperphosphorylation occurs. The aim of the present study was to elucidate the – as yet unknown – molecular mechanisms underlying this process, at both a cellular and systemic level. Methods: Different phosphorylated forms of Tau and the main cellular factors involved in Tau phospho-regulation were assessed by western blot in the parietal cortex and hippocampus of rats induced in ST, at either the hypothermic nadir or after the recovery of euthermia. Pro- and anti-apoptotic markers, as well as different systemic factors which are involved in natural torpor, were also assessed. Finally, the degree of microglia activation was determined through morphometry. Results: Overall, the results show that ST triggers a regulated biochemical process which can dam PPTau formation and favor its reversibility starting, unexpectedly for a non-hibernator, from the hypothermic nadir. In particular, at the nadir, the glycogen synthase kinase‐β was largely inhibited in both regions, the melatonin plasma levels were significantly increased and the antiapoptotic factor Akt was significantly activated in the hippocampus early after, while a transient neuroinflammation was observed during the recovery period. Discussion: Together, the present data suggest that ST can trigger a previously undescribed latent and regulated physiological process, that is able to cope with brain PPTau formation.
format Online
Article
Text
id pubmed-10034179
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-100341792023-03-24 Synthetic torpor triggers a regulated mechanism in the rat brain, favoring the reversibility of Tau protein hyperphosphorylation Squarcio, Fabio Hitrec, Timna Piscitiello, Emiliana Cerri, Matteo Giovannini, Catia Martelli, Davide Occhinegro, Alessandra Taddei, Ludovico Tupone, Domenico Amici, Roberto Luppi, Marco Front Physiol Physiology Introduction: Hyperphosphorylated Tau protein (PPTau) is the hallmark of tauopathic neurodegeneration. During “synthetic torpor” (ST), a transient hypothermic state which can be induced in rats by the local pharmacological inhibition of the Raphe Pallidus, a reversible brain Tau hyperphosphorylation occurs. The aim of the present study was to elucidate the – as yet unknown – molecular mechanisms underlying this process, at both a cellular and systemic level. Methods: Different phosphorylated forms of Tau and the main cellular factors involved in Tau phospho-regulation were assessed by western blot in the parietal cortex and hippocampus of rats induced in ST, at either the hypothermic nadir or after the recovery of euthermia. Pro- and anti-apoptotic markers, as well as different systemic factors which are involved in natural torpor, were also assessed. Finally, the degree of microglia activation was determined through morphometry. Results: Overall, the results show that ST triggers a regulated biochemical process which can dam PPTau formation and favor its reversibility starting, unexpectedly for a non-hibernator, from the hypothermic nadir. In particular, at the nadir, the glycogen synthase kinase‐β was largely inhibited in both regions, the melatonin plasma levels were significantly increased and the antiapoptotic factor Akt was significantly activated in the hippocampus early after, while a transient neuroinflammation was observed during the recovery period. Discussion: Together, the present data suggest that ST can trigger a previously undescribed latent and regulated physiological process, that is able to cope with brain PPTau formation. Frontiers Media S.A. 2023-03-09 /pmc/articles/PMC10034179/ /pubmed/36969585 http://dx.doi.org/10.3389/fphys.2023.1129278 Text en Copyright © 2023 Squarcio, Hitrec, Piscitiello, Cerri, Giovannini, Martelli, Occhinegro, Taddei, Tupone, Amici and Luppi. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Physiology
Squarcio, Fabio
Hitrec, Timna
Piscitiello, Emiliana
Cerri, Matteo
Giovannini, Catia
Martelli, Davide
Occhinegro, Alessandra
Taddei, Ludovico
Tupone, Domenico
Amici, Roberto
Luppi, Marco
Synthetic torpor triggers a regulated mechanism in the rat brain, favoring the reversibility of Tau protein hyperphosphorylation
title Synthetic torpor triggers a regulated mechanism in the rat brain, favoring the reversibility of Tau protein hyperphosphorylation
title_full Synthetic torpor triggers a regulated mechanism in the rat brain, favoring the reversibility of Tau protein hyperphosphorylation
title_fullStr Synthetic torpor triggers a regulated mechanism in the rat brain, favoring the reversibility of Tau protein hyperphosphorylation
title_full_unstemmed Synthetic torpor triggers a regulated mechanism in the rat brain, favoring the reversibility of Tau protein hyperphosphorylation
title_short Synthetic torpor triggers a regulated mechanism in the rat brain, favoring the reversibility of Tau protein hyperphosphorylation
title_sort synthetic torpor triggers a regulated mechanism in the rat brain, favoring the reversibility of tau protein hyperphosphorylation
topic Physiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10034179/
https://www.ncbi.nlm.nih.gov/pubmed/36969585
http://dx.doi.org/10.3389/fphys.2023.1129278
work_keys_str_mv AT squarciofabio synthetictorportriggersaregulatedmechanismintheratbrainfavoringthereversibilityoftauproteinhyperphosphorylation
AT hitrectimna synthetictorportriggersaregulatedmechanismintheratbrainfavoringthereversibilityoftauproteinhyperphosphorylation
AT piscitielloemiliana synthetictorportriggersaregulatedmechanismintheratbrainfavoringthereversibilityoftauproteinhyperphosphorylation
AT cerrimatteo synthetictorportriggersaregulatedmechanismintheratbrainfavoringthereversibilityoftauproteinhyperphosphorylation
AT giovanninicatia synthetictorportriggersaregulatedmechanismintheratbrainfavoringthereversibilityoftauproteinhyperphosphorylation
AT martellidavide synthetictorportriggersaregulatedmechanismintheratbrainfavoringthereversibilityoftauproteinhyperphosphorylation
AT occhinegroalessandra synthetictorportriggersaregulatedmechanismintheratbrainfavoringthereversibilityoftauproteinhyperphosphorylation
AT taddeiludovico synthetictorportriggersaregulatedmechanismintheratbrainfavoringthereversibilityoftauproteinhyperphosphorylation
AT tuponedomenico synthetictorportriggersaregulatedmechanismintheratbrainfavoringthereversibilityoftauproteinhyperphosphorylation
AT amiciroberto synthetictorportriggersaregulatedmechanismintheratbrainfavoringthereversibilityoftauproteinhyperphosphorylation
AT luppimarco synthetictorportriggersaregulatedmechanismintheratbrainfavoringthereversibilityoftauproteinhyperphosphorylation